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Tanscriptomic Study of the Soybean-Fusarium virguliforme Interaction Revealed a Novel Ankyrin-Repeat Containing Defense Gene Expression of Whose during Infection Led to Enhanced Resistance to the Fungal Pathogen in Transgenic Soybean Plants

机译:大豆-镰刀菌形互作的蛋白质组学研究揭示了一种新型的包含防御基因的锚蛋白重复序列​​感染过程中表达的表达导致转基因大豆植物对真菌病原菌的抗性增强。

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摘要

Fusarium virguliforme causes the serious disease sudden death syndrome (SDS) in soybean. Host resistance to this pathogen is partial and is encoded by a large number of quantitative trait loci, each conditioning small effects. Breeding SDS resistance is therefore challenging and identification of single-gene encoded novel resistance mechanisms is becoming a priority to fight this devastating this fungal pathogen. In this transcriptomic study we identified a few putative soybean defense genes, expression of which is suppressed during F. virguliforme infection. The F. virguliforme infection-suppressed genes were broadly classified into four major classes. The steady state transcript levels of many of these genes were suppressed to undetectable levels immediately following F. virguliforme infection. One of these classes contains two novel genes encoding ankyrin repeat-containing proteins. Expression of one of these genes, GmARP1, during F. virguliforme infection enhances SDS resistance among the transgenic soybean plants. Our data suggest that GmARP1 is a novel defense gene and the pathogen presumably suppress its expression to establish compatible interaction.
机译:镰刀菌引起大豆严重疾病猝死综合征(SDS)。宿主对该病原体的抗性是部分的,并且由大量的数量性状基因座编码,每种条件的作用很小。因此,育种对SDS的抗性具有挑战性,并且鉴定单基因编码的新抗性机制正成为与这种破坏性真菌病原体作斗争的优先事项。在这项转录组研究中,我们鉴定了一些推定的大豆防御基因,其表达在维尔纽弗氏菌感染期间被抑制。 F. virguliforme感染抑制基因大致分为四个主要类别。在这些病毒中,许多基因的稳态转录水平立即被抑制到不可检测的水平。这些类别之一包含编码包含锚蛋白重复序列​​的蛋白质的两个新基因。在维氏乳杆菌感染期间,这些基因之一GmARP1的表达增强了转基因大豆植物的SDS抗性。我们的数据表明,GmARP1是一个新型防御基因,病原体可能会抑制其表达以建立相容的相互作用。

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